Enhancing motor imagery in the third-person perspective by manipulating sense of body ownership with virtual reality.
Xiaotian Xu, Xiaoya Fan, Jiaoyang Dong, Xiting Zhang, Zhe Song, Dingqun Bai, Fang Pu
The European journal of neuroscience October 1, 2024 DOI: 10.1111/ejn.16515 via PubMed
Summary
AI-generated from the abstractMotor imagery (MI) training guided by virtual reality (VR) from the third-person perspective (3PP) can be enhanced by inducing a sense of body ownership over a virtual avatar. A novel paradigm used synchronous visuo-tactile stimulation to create a full-body illusion (FBI), similar to an out-of-body experience (OBE), in 31 healthy participants. Event-related electroencephalograph (EEG) desynchronization (ERD) at motor-related regions was stronger with the FBI induction compared to a control condition. The results demonstrate that eliciting body ownership from 3PP can improve the effectiveness of 3PP MI, offering new possibilities for motor rehabilitation.
Study at a glance
| Characteristics | Controlled experiment Peer reviewed |
|---|---|
| Sample size | 31 |
| Population | Healthy participants |
| Keywords | Electroencephalograph EEG Event‐related desynchronization erd Full‐body illusion fbi Motor imagery mi Out‐of‐body experience obe |
| Citations | 4 |
| Key finding | Inducing a full-body illusion from the third-person perspective enhances motor imagery, as shown by stronger event-related EEG desynchronization at motor-related regions. |
Abstract
Virtual reality (VR)-guided motor imagery (MI) is a widely used approach for motor rehabilitation, especially for patients with severe motor impairments. Most approaches provide visual guidance from the first-person perspective (1PP). MI training with visual guidance from the third-person perspective (3PP) remains largely unexplored. We argue that 3PP MI training has its own advantages and can supplement 1PP MI. For some movements beyond the view of 1PP, such as shoulder shrugging and other axial movements, MI are suitable performed under 3PP. However, the efficiency of existing paradigms for 3PP MI is unsatisfactory. We speculate that the absence of sense of body ownership (SOO) from 3PP could be one possible factor and hypothesize that 3PP MI could be enhanced by eliciting SOO over a 3PP avatar. Based on our hypothesis, a novel paradigm was proposed to enhance 3PP MI by inducing full-body illusion (FBI) from 3PP, which is similar to the so-called out-of-body experience (OBE), using synchronous visuo-tactile stimulus with VR. The event-related Electroencephalograph (EEG) desynchronization (ERD) at motor-related regions from 31 healthy participants were calculated and compared with a control paradigm without "OBE" FBI induction. This study attempts to enhance 3PP MI with FBI induction. It offers an opportunity to perform MI guided by action observation from 3PP with elicited SOO to the observed avatar. We believe that 3PP MI could provide more possibilities for effective rehabilitation training, when SOO could be elicited to a virtual avatar and the present work demonstrates its viability and effectiveness.